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首页> 外文期刊>Journal of Climate >The Role of Extratropical Air-Sea Interaction in the Autumn Subseasonal Variability of the North Atlantic Oscillation
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The Role of Extratropical Air-Sea Interaction in the Autumn Subseasonal Variability of the North Atlantic Oscillation

机译:北大西洋振荡秋季综合变异的劣质海洋互动的作用

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Considerable progress has been made in understanding the internal eddy-mean flow feedback in the subseasonal variability of the North Atlantic Oscillation (NAO) during winter. Using daily atmospheric and oceanic reanalysis data, this study highlights the role of extratropical air-sea interaction in the NAO variability during autumn when the daily sea surface temperature (SST) variability is more active and eddy-mean flow interactions are still relevant. Our analysis shows that a horseshoe-like SST tripolar pattern in the North Atlantic Ocean, marked by a cold anomaly in the Gulf Stream and two warm anomalies to the south of the Gulf Stream and off the western coast of northern Europe, can induce a quasi-barotropic NAO-like atmospheric response through eddy-mediated processes. An initial southwest-northeast tripolar geopotential anomaly in the North Atlantic forces this horseshoe-like SST anomaly tripole. Then the SST anomalies, through surface heat flux exchange, alter the spatial patterns of the lower-tropospheric temperature and thus baroclinicity anomalies, which are manifested as the midlatitude baroclinicity shifted poleward and reduced baroclinicity poleward of 70 degrees N. In response to such changes of the lower-level baroclinicity, anomalous synoptic eddy generation, eddy kinetic energy, and eddy momentum forcing in the midlatitudes all shift poleward. Meanwhile, the 10-30-day low-frequency anticyclonic wave activities in the high latitudes decrease significantly. We illustrate that both the latitudinal displacement of midlatitude synoptic eddy activities and intensity variation of high-latitude low-frequency wave activities contribute to inducing the NAO-like anomalies.
机译:在冬季,了解北大西洋振荡(Nao)的灌木变异性的内部涡流流动反馈,已经取得了相当大的进展。本研究采用日常大气和海洋再分析数据,突出了秋季在日秋季劣化中的劣质空气海洋相互作用的作用,当日海表面温度(SST)变异性更具活性,涡流性流动相互作用仍然相关。我们的分析表明,北大西洋的马蹄铁SST三角石模式,在海湾溪流和海湾溪流南部和北欧西海岸的两只温暖的异常中标志着,可以诱导祖先 - 通过涡流介导的方法进行均等的Nao样式响应。北大西洋的初始西南东北地球态异常异常强迫这个马蹄铁的SST异常之二。然后,通过表面热通量交换,改变下层温度的空间模式,从而改变了下巴透明度异常,这表现为中际条形性偏移极向并降低了70度N的极端值。响应于这些变化较低水平的酒石结性,异常的天气涡发电,涡动能能量,涡致动量迫使在中间体均匀。同时,高纬度的10-30天的低频反气旋波浪活动显着下降。我们说明了中光涡涡活动的纬度位移和高纬度低频波浪活性的强度变化有助于诱导Nao样的异常。

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